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Photoprotective responses of an ice algal community in Saroma-Ko Lagoon, Hokkaido, Japan

机译:日本北海道Saroma-Ko Lagoon的一个冰藻群落的光保护反应

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In polar seas, ice algal communities can acclimate to extremely low light conditions. Reduced acclimation to shade in ice algal communities, as a result of shortened ice seasons at the lower latitude limits of sea ice distribution, has been suggested as advantageous for avoiding strong photoinhibition when cells are released into high light levels at the water's surface. Thermal dissipation of excess energy by xanthophyll cycle pigments in the de-epoxidated state may occur in ice algal communities released from retreating sea ice. A light exposure experiment was conducted on ice algal communities obtained from sea ice at Saroma-Ko Lagoon in Hokkaido, Japan. Photoprotective responses to direct sunlight were examined through non-photochemical quenching (NPQ) of chlorophyll fluorescence and xanthophyll pigments. De-epoxi-dation of diadinoxanthin (DD) to diatoxanthin (DT) occurred rapidly, and NPQ showed a dynamic response to high light exposure. The linear relationship between the ratio of DT to chlorophyll a and NPQ followed a steeper slope than previously observed for mesophilic diatoms. The steeper slope could be explained by an apparent increase in DT for the mesophilic diatoms and induction of NPQ in response to low temperatures only in the ice algal communities. Enhanced production of DT in mesophilic diatoms could be the result of de-epoxidation of DD plus de novo synthesis, and the enhancement of NPQ might be caused by low temperature stress in the ice algae. Although the response of NPQ might be related to temperature, NPQ independent of DT synthesis should also be studied.
机译:在极地海洋中,冰藻群落可以适应极低的光照条件。已经提出,由于在海冰分布的较低纬度范围内冰季缩短,冰藻群落中的阴影适应性降低,有利于避免细胞在水表面释放到高光照水平时强烈的光抑制作用。叶绿素循环色素在脱环氧化状态下多余能量的热耗散可能发生在从撤离海冰释放出的冰藻群落中。在日本北海道Saroma-Ko泻湖的海冰中,对冰藻群落进行了光暴露实验。通过叶绿素荧光和叶黄素色素的非光化学猝灭(NPQ)检查了对直射阳光的光保护反应。二恶英黄嘌呤(DD)对地黄嘌呤(DT)的去表皮分解迅速发生,而NPQ对高曝光量表现出动态响应。 DT与叶绿素a的比率与NPQ之间的线性关系比中温硅藻观察到的斜率更大。仅在冰藻群落中,中温硅藻的DT明显增加和NPQ响应低温的诱导,可以解释更陡的斜率。嗜温硅藻中DT产量的提高可能是DD脱环氧化再合成的结果,而NPQ的提高可能是由于冰藻的低温胁迫引起的。尽管NPQ的响应可能与温度有关,但也应研究与DT合成无关的NPQ。

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